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Renewable Technologies: Thermionic Energy Conversion
Details
Thermionic energy converter (TEC) is a device to generate electricity from heat in a silent, vibration-free operation. Non-idealities such as negative space-charge effect and electron reflection from collector surface adversely effect output current density and device efficiency. Using a range of thin film deposition techniques such as rf plasma magnetron sputtering, electrochemical deposition and electroless process, different surface structures were developed and tested for suppression of electron reflection using Cs/O vapor plasma TECs. Principles of both vacuum and solution based synthesis of thin films, and promising device configurations for thermionic energy converters are presented. This book overviews evolution of thermionics technology in a comprehensive manner, identifies key issues and challenges to be addressed, and suggests feasible solutions based on a sensible choice of materials and processes. The contents of this book are useful for teaching at both undergraduate and postgraduate levels as well as for researchers working on thin film synthesis and characterization for applications in energy, microelectronics, and surface engineering industries.
Autorentext
Mohammad ISLAM, PhD Materials Engineering, New Mexico Institute of Mining and Technology, USA Visiting Faculty, Chemical Engineering, NMIMT Postdoc Research, Institut des Matériaux (IMN), Université de Nantes, France Assistant Prof., National University of Sciences and Technology, Pakistan Works on thin films and nanostructures, SEM/AFM, Photovoltaics
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783838368320
- Sprache Englisch
- Genre Maschinenbau
- Anzahl Seiten 204
- Größe H220mm x B150mm x T13mm
- Jahr 2010
- EAN 9783838368320
- Format Kartonierter Einband
- ISBN 3838368320
- Veröffentlichung 08.06.2010
- Titel Renewable Technologies: Thermionic Energy Conversion
- Autor Mohammad Islam
- Untertitel Thin Films and surfaces for suppression of electron reflection and ehnanced device performance
- Gewicht 322g
- Herausgeber LAP LAMBERT Academic Publishing